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Detection of Micrococcus Luteus Biofilm Formation in Microfluidic Environments by pH Measurement Using an Ion-Sensitive Field-Effect Transistor

机译:通过使用离子敏感的场效应晶体管进行pH测量检测微流体环境中黄褐球菌生物膜的形成

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摘要

Biofilm formation in microfluidic channels is difficult to detect because sampling volumes are too small for conventional turbidity measurements. To detect biofilm formation, we used an ion-sensitive field-effect transistor (ISFET) measurement system to measure pH changes in small volumes of bacterial suspension. Cells of Micrococcus luteus (M. luteus) were cultured in polystyrene (PS) microtubes and polymethylmethacrylate (PMMA)-based microfluidic channels laminated with polyvinylidene chloride. In microtubes, concentrations of bacteria and pH in the suspension were analyzed by measuring turbidity and using an ISFET sensor, respectively. In microfluidic channels containing 20 μL of bacterial suspension, we measured pH changes using the ISFET sensor and monitored biofilm formation using a microscope. We detected acidification and alkalinization phases of M. luteus from the ISFET sensor signals in both microtubes and microfluidic channels. In the alkalinization phase, after 2 day culture, dense biofilm formation was observed at the bottom of the microfluidic channels. In this study, we used an ISFET sensor to detect biofilm formation in clinical and industrial microfluidic environments by detecting alkalinization of the culture medium.
机译:微流体通道中的生物膜形成难以检测,因为采样量对于常规浊度测量而言太小。为了检测生物膜的形成,我们使用了离子敏感场效应晶体管(ISFET)测量系统来测量少量细菌悬浮液的pH值变化。在聚苯乙烯(PS)微管和层压有聚偏二氯乙烯的基于聚甲基丙烯酸甲酯(PMMA)的微流体通道中培养了微球菌(M. luteus)细胞。在微管中,分别通过测量浊度和使用ISFET传感器分析悬浮液中的细菌浓度和pH值。在包含20μL细菌悬浮液的微流体通道中,我们使用ISFET传感器测量了pH变化,并使用显微镜监测了生物膜的形成。我们从微管和微流控通道中的ISFET传感器信号中检测了黄褐藻的酸化和碱化阶段。在碱化阶段,培养2天后,在微流体通道底部观察到致密的生物膜形成。在这项研究中,我们使用ISFET传感器通过检测培养基的碱化来检测临床和工业微流体环境中生物膜的形成。

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